A fluid enters a machine at 162.8 m/s, 783.45 kPa, and with a specific volume of 0.463 m°/kg. The radiation heat loss is 21.9 kJ/kg. The internal energy decreases 480 kJ/kg. If the fluid leaves at 339.78 m/s, 3 147.72 kPa, and 0.87 m /kg. Determine the work done in kJ by the fluid if its mass 1.66 kg.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A fluid enters a machine at 162.8 m/s,
783.45 kPa, and with a specific volume of
3
0.463 m /kg. The radiation heat loss is 21.9
kJ/kg. The internal energy decreases 480
kJ/kg. If the fluid leaves at 339.78 m/s,
147.72 kPa, and 0.87 m/kg. Determine the
work done in kJ by the fluid if its mass 1.66
kg.
Transcribed Image Text:A fluid enters a machine at 162.8 m/s, 783.45 kPa, and with a specific volume of 3 0.463 m /kg. The radiation heat loss is 21.9 kJ/kg. The internal energy decreases 480 kJ/kg. If the fluid leaves at 339.78 m/s, 147.72 kPa, and 0.87 m/kg. Determine the work done in kJ by the fluid if its mass 1.66 kg.
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